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首页> 外文期刊>IEEE Transactions on Power Electronics >Quasi-Resonant Zero-Current-Switching Bidirectional Converter for Battery Equalization Applications
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Quasi-Resonant Zero-Current-Switching Bidirectional Converter for Battery Equalization Applications

机译:用于电池均衡应用的准谐振零电流开关双向转换器

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摘要

A systematic approach to reform and analyze a soft-switching bidirectional dc-to-dc converter is proposed for cell voltage balancing control in a series connected battery string. quasi-resonant converter circuits have been designed to achieve the zero-current-switching (ZCS) to reduce the switching loss in bidirectional battery equalizers. The results indicate that the switching loss and energy transfer efficiency can be substantially improved using the quasi-resonant ZCS (QRZCS) technology in a battery charging system with an individual cell equalizer (ICE). The validity of the battery equalization is further verified using an experimental installation involving a battery string of three lithium–ion cells. The simulation and experimental results show that the proposed QRZCS battery equalization schemes can achieve bidirectional battery equalization performance and reduce the MOSFET transistor switch power losses by more than 96% and increase the efficiency by around 20%$sim$30% compared with the conventional battery equalizer during an identical equalization process.
机译:提出了一种改革和分析软开关双向DC-DC转换器的系统方法,用于串联电池串中的电池电压平衡控制。已设计准谐振转换器电路以实现零电流开关(ZCS),以减少双向电池均衡器中的开关损耗。结果表明,在具有单个电池均衡器(ICE)的电池充电系统中,使用准谐振ZCS(QRZCS)技术可以大大改善开关损耗和能量传输效率。使用包含三个锂离子电池串的实验装置进一步验证了电池均衡的有效性。仿真和实验结果表明,与传统的电池均衡器相比,拟议的QRZCS电池均衡方案可以实现双向电池均衡性能,并将MOSFET晶体管的开关功率损耗降低96%以上,效率提高约20%〜sim $ 30%。在相同的均衡过程中。

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